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1. E-fabric Multifunctional Wearable Sensors for Pressure Ulcer Prevention

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 Our research group focuses on developing a monitoring system for the early diagnosis of pressure ulcers utilizing wearable multimodal sensors.

 

  We develop wearable devices capable of wireless data transmission and the continuous monitoring of changes in skin pressure, temperature, and impedance, which are closely associated with the development of pressure ulcers.

  Through this research, we aim to elucidate the correlations between biomarkers and the disease, ultimately establishing an accurate, objective, and next-generation methodology for the early diagnosis of pressure ulcers.

 

2. Development of Wound Healing Patches Using Adhesive Electrodes

 Our laboratory focuses on developing electroceutical systems designed to heal chronic wounds through electrical stimulation.

 

 Chronic wounds often deviate from the natural healing process, remaining unhealed for prolonged periods. To overcome this, we utilize electrical stimulation to restore and enhance the natural healing mechanisms of cells. We specifically research and develop wearable electrodes with high adhesion and low electrical impedance to deliver efficient stimulation to the skin.

 

 Through our wearable electroceuticals, stable electrical stimulation can be applied to the wound site over extended periods, effectively restoring impaired healing processes and facilitating the treatment of chronic wounds.

3. Development of Glaucoma Sensing and Treatment Systems via Optogenetics

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 Our laboratory focuses on developing next-generation healthcare systems for the management of chronic diseases, utilizing ultra-flexible OLED and wearable sensor technologies.

 

 To effectively manage glaucoma, we research real-time intraocular pressure (IOP) monitoring technologies using wearable strain sensors, alongside customized phototherapy techniques based on optogenetic IOP regulation principles.

 

 By developing contact lens-type devices, we implement a convenient and non-invasive system. To achieve this, we conduct research on the integration of multiple components—such as sensors, OLEDs, and antennas—as well as the development of wireless power transfer and integrated circuits.

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